ABSTRACT:Abstract(#br)The research work was conducted to synthesize tr的简体中文翻译

ABSTRACT:Abstract(#br)The research

ABSTRACT:Abstract(#br)The research work was conducted to synthesize transparent self-cleaning coatings by using organic Polydimethylsiloxane (PDMS) polymers and inorganic nano-Calcium carbonate (CaCO 3 ) fillers that can be fabricated easily on the glass panel via spray-method and cured under room temperature. The coating system has been developed with a low-cost nano-CaCO 3 and simple process which is targeted to keep the cost at lower side. The self-cleaning and durability of nano-CaCO 3 coating systems after 4 month of outdoor exposure have been investigated. From the obtained result, the transmission of 0.8 wt % of nano-CaCO 3 coated substrate was slightly degraded by 7% only indicating that its excellent self-cleaning effect. Higher loading ratio of nano-CaCO 3 contributes to larger capillary pressure ( P c ) and air-pockets which have deteriorated the water hammer pressure of rainfall impact ( P WH ) and fog. Therefore, the Water Contact Angle (WCA) of coating system was degraded by 2% only and exhibits a great anti-fog property.
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结果 (简体中文) 1: [复制]
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摘要:抽象(#BR)的研究工作进行通过使用有机聚二甲基硅氧烷(PDMS)聚合物和无机纳米碳酸钙,碳酸钙(CaCO 3)的填料,可以很容易在玻璃面板上通过喷雾来制造合成透明的自清洁涂层方法和室温下固化。涂布系统已经发展起来了一种低成本的纳米碳酸钙和简单的方法,该方法是针对以保持成本在较低侧。纳米碳酸钙涂层系统的自洁性和耐久性后4个月户外暴露了研究。从所获得的结果,纳米碳酸钙涂覆的基材的0.8%(重量)的传输由7%的略微降低仅表明其优良的自清洁效果。纳米碳酸钙有助于更高的负载量比较大的毛细管压力(P c)和空气袋已劣化的降雨影响(P WH)和雾水锤压力。因此,涂料体系的水接触角(WCA)通过只有2%的降低,并且表现出很大的防雾性能。
正在翻译中..
结果 (简体中文) 2:[复制]
复制成功!
ABSTRACT:Abstract(#br)The research work was conducted to synthesize transparent self-cleaning coatings by using organic Polydimethylsiloxane (PDMS) polymers and inorganic nano-Calcium carbonate (CaCO 3 ) fillers that can be fabricated easily on the glass panel via spray-method and cured under room temperature. The coating system has been developed with a low-cost nano-CaCO 3 and simple process which is targeted to keep the cost at lower side. The self-cleaning and durability of nano-CaCO 3 coating systems after 4 month of outdoor exposure have been investigated. From the obtained result, the transmission of 0.8 wt % of nano-CaCO 3 coated substrate was slightly degraded by 7% only indicating that its excellent self-cleaning effect. Higher loading ratio of nano-CaCO 3 contributes to larger capillary pressure ( P c ) and air-pockets which have deteriorated the water hammer pressure of rainfall impact ( P WH ) and fog. Therefore, the Water Contact Angle (WCA) of coating system was degraded by 2% only and exhibits a great anti-fog property.
正在翻译中..
结果 (简体中文) 3:[复制]
复制成功!
文摘:采用有机聚二甲基硅氧烷(PDMS)聚合物和无机纳米碳酸钙(CaCO 3)填料,采用喷雾法在玻璃面板上容易制备并在室温下固化,制备了透明自清洁涂料。采用低成本的纳米CaCO 3和简单的制备工艺,以降低制备成本为目标,研制了纳米caco3涂层体系。研究了纳米CaCO 3涂层体系在室外暴露4个月后的自清洁性和耐久性。结果表明,0.8wt%纳米CaCO 3涂层的透射率略有下降,下降了7%,说明其具有良好的自清洁效果。纳米CaCO 3负载率越高,毛细压力(P c)越大,气泡越大,导致降雨冲击和雾的水锤压力下降。因此,涂层体系的水接触角(WCA)仅降低了2%,具有良好的防雾性能。
正在翻译中..
 
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